Air Supply Port Male connector socket: KBB H (Hex.) 8 10 14 19 T Connecting thread M5 X 0.8 M6 X 1 Rc(PT) Rc(PT) Weight (g) Part No.
N.O. c f a e b d (A) 2 (A) 2 (A) 2 (A) 2 1 (P) 3 (R) 1 (P) 3 (R) h h 3 (R) 1 (P) 3 (R) 1 (P) g g Component parts Replacement parts Description Body Piston plate End cover Piston Spool valve assembly Spool spring No. No. 1 2 3 4 5 6 Material Aluminum die-casted Resin Aluminum die-casted Resin Stainless steel Note White White White Description Note No.
M5 x 0.8 thread depth 12 Data 5.5 NN-M5 x 0.8 NN 2 ( 1) x H 13 G Section AA A M 12 Operating port 2-M5 x 0.8 0.5 25 (Table length) N 2 ( 1): The number of pitches 27 7 12 J 3 Z Max. 9.5 ZZ H G 33.5 (mm) 6 Z M J NN H G N ZZ Model 5H9 +0.030 0 depth 5 MXF20-30 91 91 57 4 30 29 4 104 MXF20-50 113 113 77 4 45 36 4 126 MXF20-75 162 162 125 6 45 40 6 175 MXF20-100 211 211 175 6 60 59 6 224 8
Poppet Solenoid Valve Rubber Seal Series VK300 Type 21 Manifold Body Ported (Top ported) n1 = Number of VK300 VV3K3-21Stations Grommet: G DIN terminal: D Grommet: G DIN terminal: D Manual override (Non-locking) Applicable cable O.D: 3.5 to 7 V100 SY 300 (Lead wire length) 2-Rc 1/8 (P port) 2-Rc 1/8 (P port) n1-Rc 1/8 (A port) 2-4.5 (Mounting hole) SYJ VK (Pitch) VZ Courtesy of Steven Engineering
D-C7 D-C80 15 2 (Different sides) 10 1 D-H7 D-H7W D-H7NF D-H7BAL 60 2 (Same side) Band mounting style 1 2 Ek = m2 15 2 (Different sides) 10 1 65 2 (Same side) D-C73C D-C80C D-H7C 15 2 (Different sides) 10 1 Weight (g) Bore size (mm) 16 Standard weight 320 Additional weight per each 15 mm of stroke 6.5 9 27 Axial foot style 8 Mounting bracket weight 21 Rod side flange style 7 Double clevis
D-C7 D-C80 15 2 (Different sides) 10 1 D-H7 D-H7W D-H7NF D-H7BAL 60 2 (Same side) Band mounting style 1 2 Ek = m2 15 2 (Different sides) 10 1 65 2 (Same side) D-C73C D-C80C D-H7C 15 2 (Different sides) 10 1 Weight (g) Bore size (mm) 16 Standard weight 320 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area:
(mm) Effective orifice(mm 2) Weight (g) Part No.
Models Symbol (A) 2 Effective area mm (Cv factor) Operating pressure range MPa {kgf/cm} Port size Valve model Weight g (grommet type) VKF33 3.6 (0.2) 2 3 0 to 0.7 {0 to 7.1} VKF33 Y (for low power consumption, DC2W) 2.7 (0.15) 2 3 3 (R) 1 (P) Note 1) M5 x 0.8 Rc(PT) 1/8 Body ported VKF33 E (for long loading time) 2.7 (0.15) 80 2 3 VKF33 V (for vacuum) 3.6 (0.2) 2 3 101.2kPa to 0.1 {1Torr
M5 x 0.8 (Port) M5 x 0.8 (Hexagon socket head plug) PP TT UU GB TT UU G NW GB 10 N A Z + Stroke M5 x 0.8 (Port) M5 x 0.8 (Hexagon socket head plug) (WW) QQ M5 x 0.8 (Hexagon socket head plug) M5 x 0.8 (Port) (WW) GB PP XX XX G Centralized piping Centralized piping 2-M5 x 0.8 (Hexagon socket head plug) 2-M5 x 0.8 (Hexagon socket head plug) VV VV 1.1 S WX 8.4 2-4 Bottom port (Applicable O-ring
x 0.8 Thread depth 10 6 Metal connector M14 x 1 4 x M5 x 0.8 depth 6 (Bottom 4.3 through-hole) 7.5 counterbore depth 4 (500 or 3000) 25 5 Width across flats 8 70 0.5 7 3 10 18f8 6f7 3.8 44 17 27 18 SR3.5 26.6 3 18 M5 x 0.8 13 27 40 17 5 67.5 14.5 4 x M4 x 0.7 2 x M5 x 0.8 Thread depth 7.5 71.5 (Port size) 103 + Stroke 24 127 + Stroke 2 D-X 651 CEP1 Series Dimensions: 12 Foot type: CEP1L12
Coordinates and Moments z M3: Yawing M1: Pitching y x M2: Rolling Static moment Ceiling mounting Horizontal mounting Wall mounting M1 M2 M2 M1 M2 M3 y X x Y y z X x Y X x Z m1 x g m2 x g m3 x g Vertical mounting Mounting orientation Horizontal Ceiling Wall Vertical m1 m2 m3 m4 Static load m M3 M1 m1 x g x X m2 x g x X m4 x g x Z Static moment M1 m1 x g x Y m2 x g x Y m3 x g x Z y z M2 z Y
-ASD330F-01-08 10-ASD230F-M5-06 2.
Weight Specifications (g) Pad dia. (mm) Vacuum entry (One-touch fitting) Lateral Vacuum entry direction Mounting female thread 6 tube 4 tube 8 tube Mounting Vacuum entry port Connection M5 x 0.8 19 18 Female thread One-touch fitting 10 to 16 M5 x 0.8 22 23 4 tube 10 to 16 20 to 32 M5 x 0.8 M8 x 1.25 21 22 6 tube M5 x 0.8 58 60 6 tube 40, 50 M5 x 0.8 Pad dia.
/2 B O D Y S I Z E 1 M5 2 1/8, 1/4 Standard 3 3/8 Standard 4 1/2 Standard T H R E A D P O R T S I Z E M5 ...M5 U01 ..1/8 U02 ..1/4 U03 ..3/8 U04 ..1/2 U32 ..10-32UNF 01 ... 1/8 02 ... 1/4 03 ... 3/8 04 ... 1/2 W I T H O N E-T O U C H F I T T I N G S T Y P E 2 Elbow 3 Universal C O N T R O L M E T H O D 0 Meter Out 1 Meter In Courtesy of Steven Engineering, Inc. !
None XLF16-30-1-2 XLF25-30-1-2 XLF40-30-1-2 XLF50-30-1-2 XLF63-30-1-2 XLF80-30-1-2 Yes XLF16A-30-1-2 XLF25A-30-1-2 XLF40A-30-1-2 XLF50A-30-1-2 XLF63A-30-1-2 XLF80A-30-1-2 XLF High temperature None XLF16-30-1H-2 XLF25-30-1H-2 XLF40-30-1H-2 XLF50-30-1H-2 XLF63-30-1H-2 XLF80-30-1H-2 Yes XLF16A-30-1H-2 XLF25A-30-1H-2 XLF40A-30-1H-2 XLF50A-30-1H-2 XLF63A-30-1H-2 XLF80A-30-1H-2 XLFV General use
Q Width across flats 12 N M5 x 0.8 Width across flats 10 8 3 5 Y R R F F Width across flats 12 Width across flats 3 Width across flats 10 Width across flats 2 E E D C D C 2 2 A A B B Dimensions A Dimensions A (mm) (mm) B B C D E F Y C D E F N Model Model ZPR10F-0-B5 ZPR20F-0-B5 10 12 10 12.5 23.4 39.5 1.5 M5 x 0.8 20 22 ZPR13F-0-B5 ZPR20F-0-B8 13 15 M8 x 1.25 23.9 10.5 13 40 2 12.5 15.5 29.3
M1 = m x g x L1 = 3 x 9.8 x 0.05 = 1.47 [Nm] 2. Static moment Investigate M1. Find the value of M1 max at 300 mm/s in Graph (1). 2a =M1/M1 max =1.47/14 =0.105 M1 L1 M3 = m x g x L2 = 3 x 9.8 x 0.04 = 1.176 [Nm] m x g Investigate M3. M3 Find the value of M3 max at 300 mm/s in Graph (3). 2b = M3/M3 max = 1.176/14 = 0.084 L2 m x g 3.
Stroke+191 D section detail (S=2/1) L Stroke+214 26 10 10 (92) 14 2-M5 x 0.8 Effective screw length 10 61 60 57 31 12 6 Reference plane 63.5 62.5 3 3 130 4-M5 x 0.8depth10 F-M5 x 0.8depth10 3-4H10depth5 4-6.5 20 20 12.5 C 31 63.5 13.5 E-100 4H10depth5 5 (26) (44) 110 100 Stroke69 (Stroke+131) 10 208 (For 200 to 1000 strokes) 85 (For 100 to 150 strokes) 92 C section detail (S=2/1) Dimension
Find the value of m max. at 300 mm/s in Graph (7) for m3. m M1 = m x g x L1 = 3 x 9.8 x 0.05 = 1.47 [Nm] 2. Static moment Investigate M1. Find the value of M2 max. at 300 mm/s in Graph (1). 2a =M1/M1 max =1.47/14 =0.105 M1 L1 M3 = m x g x L2 = 3 x 9.8 x 0.04 = 1.176 [Nm] m x g Investigate M3.